Literature DB >> 17365148

Mercury activates vascular endothelial cell phospholipase D through thiols and oxidative stress.

Thomas J Hagele1, Jessica N Mazerik, Anita Gregory, Bruce Kaufman, Ulysses Magalang, M Lakshmi Kuppusamy, Clay B Marsh, Periannan Kuppusamy, Narasimham L Parinandi.   

Abstract

Currently, mercury has been identified as a risk factor of cardiovascular diseases among humans. Here, the authors tested the hypothesis that mercury modulates the activity of the endothelial lipid signaling enzyme, phospholipase D (PLD), which is an important player in the endothelial cell (EC) barrier functions. Monolayers of bovine pulmonary artery ECs (BPAECs) in culture, following labeling of membrane phospholipids with [32P]orthophosphate, were exposed to mercuric chloride (inorganic form), methylmercury chloride (environmental form), and thimerosal (pharmaceutical form), and the formation of phosphatidylbutanol as an index of PLD activity was determined by thin-layer chromatography and liquid scintillation counting. All three forms of mercury significantly activated PLD in BPAECs in a dose-dependent (0 to 50 microM) and time-dependent (0 to 60 min) fashion. Metal chelators significantly attenuated mercury-induced PLD activation, suggesting that cellular mercury-ligand interaction(s) is required for the enzyme activation and that chelators are suitable blockers for mercury-induced PLD activation. Sulfhydryl (thiol-protective) agents and antioxidants also significantly attenuated the mercury-induced PLD activation in BPAECs. Enhanced reactive oxygen species generation, as an index of oxidative stress, was observed in BPAECs treated with methylmercury that was attenuated by antioxidants. All the three different forms of mercury significantly induced the decrease of levels of total cellular thiols. For the first time, this study revealed that mercury induced the activation of PLD in the vascular ECs wherein cellular thiols and oxidative stress acted as signal mediators for the enzyme activation. The results underscore the importance of PLD signaling in mercury-induced endothelial dysfunctions ultimately leading to cardiovascular diseases.

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Year:  2007        PMID: 17365148     DOI: 10.1080/10915810601120509

Source DB:  PubMed          Journal:  Int J Toxicol        ISSN: 1091-5818            Impact factor:   2.032


  11 in total

1.  Thiol-redox antioxidants protect against lung vascular endothelial cytoskeletal alterations caused by pulmonary fibrosis inducer, bleomycin: comparison between classical thiol-protectant, N-acetyl-L-cysteine, and novel thiol antioxidant, N,N'-bis-2-mercaptoethyl isophthalamide.

Authors:  Rishi B Patel; Sainath R Kotha; Lynn A Sauers; Smitha Malireddy; Travis O Gurney; Niladri N Gupta; Terry S Elton; Ulysses J Magalang; Clay B Marsh; Boyd E Haley; Narasimham L Parinandi
Journal:  Toxicol Mech Methods       Date:  2012-06       Impact factor: 2.987

2.  Adiponectin protects against hyperoxic lung injury and vascular leak.

Authors:  Sean M Sliman; Rishi B Patel; Jason P Cruff; Sainath R Kotha; Christie A Newland; Carrie A Schrader; Shariq I Sherwani; Travis O Gurney; Ulysses J Magalang; Narasimham L Parinandi
Journal:  Cell Biochem Biophys       Date:  2013-11       Impact factor: 2.194

3.  Assessment of toxic elements in the samples of different cigarettes and their effect on the essential elemental status in the biological samples of Irish hypertensive consumers.

Authors:  H I Afridi; F N Talpur; T G Kazi; D Brabazon
Journal:  J Hum Hypertens       Date:  2014-10-02       Impact factor: 3.012

4.  Pulmonary fibrosis inducer, bleomycin, causes redox-sensitive activation of phospholipase D and cytotoxicity through formation of bioactive lipid signal mediator, phosphatidic acid, in lung microvascular endothelial cells.

Authors:  Rishi B Patel; Sainath R Kotha; Shariq I Sherwani; Sean M Sliman; Travis O Gurney; Brooke Loar; Susan O'Connor Butler; Andrew J Morris; Clay B Marsh; Narasimham L Parinandi
Journal:  Int J Toxicol       Date:  2010-12-03       Impact factor: 2.032

5.  Novel lipid-soluble thiol-redox antioxidant and heavy metal chelator, N,N'-bis(2-mercaptoethyl)isophthalamide (NBMI) and phospholipase D-specific inhibitor, 5-fluoro-2-indolyl des-chlorohalopemide (FIPI) attenuate mercury-induced lipid signaling leading to protection against cytotoxicity in aortic endothelial cells.

Authors:  Jordan D Secor; Sainath R Kotha; Travis O Gurney; Rishi B Patel; Nicholas R Kefauver; Niladri Gupta; Andrew J Morris; Boyd E Haley; Narasimham L Parinandi
Journal:  Int J Toxicol       Date:  2011-10-12       Impact factor: 2.032

6.  Hyperglycemic oxoaldehyde, glyoxal, causes barrier dysfunction, cytoskeletal alterations, and inhibition of angiogenesis in vascular endothelial cells: aminoguanidine protection.

Authors:  Sean M Sliman; Timothy D Eubank; Sainath R Kotha; M Lakshmi Kuppusamy; Shariq I Sherwani; Elizabeth Susan O'Connor Butler; Periannan Kuppusamy; Sashwati Roy; Clay B Marsh; David M Stern; Narasimham L Parinandi
Journal:  Mol Cell Biochem       Date:  2009-07-08       Impact factor: 3.396

7.  Mitochondrial diacylglycerol initiates protein-kinase D1-mediated ROS signaling.

Authors:  Catherine F Cowell; Heike Döppler; Irene K Yan; Angelika Hausser; Yoshio Umezawa; Peter Storz
Journal:  J Cell Sci       Date:  2009-03-03       Impact factor: 5.285

Review 8.  Role of mercury toxicity in hypertension, cardiovascular disease, and stroke.

Authors:  Mark C Houston
Journal:  J Clin Hypertens (Greenwich)       Date:  2011-07-11       Impact factor: 3.738

9.  Quantitative approach for incorporating methylmercury risks and omega-3 fatty acid benefits in developing species-specific fish consumption advice.

Authors:  Gary L Ginsberg; Brian F Toal
Journal:  Environ Health Perspect       Date:  2008-09-03       Impact factor: 9.031

Review 10.  Thimerosal exposure and the role of sulfation chemistry and thiol availability in autism.

Authors:  Janet K Kern; Boyd E Haley; David A Geier; Lisa K Sykes; Paul G King; Mark R Geier
Journal:  Int J Environ Res Public Health       Date:  2013-08-20       Impact factor: 3.390

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